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Development of a laser-based localization system in an outdoor setting: Design and performance evaluation of transmitter and receiver component

机译:在室外环境中开发激光的定位系统:发射机和接收器组件的设计与性能评估

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The Global Positioning System (GPS) has been widely used as guidance for autonomous vehicles and robots, especially in outdoor environments. For such application a high accuracy of GPS is required (e.g. using a Real-Time Kinematics Differential GPS). however, it is costly. This paper discuss about development of a laser-based localization system in outdoor setting which works based on triangulation as an alternative of positioning system as a guidance of agricultural machinery operation in a specified field operation such as fertilizer application or chemical sprayer operation. More specific this paper discuss about design and performance analysis of laser transmitter and receiver component of the proposed system. The main challenges in designing those components is that the system should be capable of dealing with influencing factors exist in outdoor environment, especially ambient light. Here, modulation technique applied to the transmitter combined with high pass filter applied to the receiver is used to address that issue. The experiment results showed that using transmitter with laser modulated at 2.7 kHz and receiver with 1.5 kHz cut-off high pass filter worked best on 50% duty cycle. The developed transmitter-receiver system was capable of reaching up to 200 m distance and worked well on a various ambient light conditions. This result suggested that the developed prototype can be used to further develop the proposed laser based localization system.
机译:全球定位系统(GPS)已被广泛用作自主车辆和机器人的指导,特别是在室外环境中。对于这种应用,需要高精度的GPS(例如,使用实时运动学差分GPS)。但是,这是昂贵的。本文讨论了基于三角测量的户外设置中基于激光的定位系统的发展,作为定位系统作为农业机械操作中的指导施肥或化学喷雾器操作的指导。本文更具体地讨论了建议系统的激光发射器和接收机组件的设计和性能分析。设计这些组件的主要挑战是,该系统应该能够处理户外环境中存在的影响因素,特别是环境光。这里,应用于发送器的调制技术与应用于接收器的高通滤波器组合用于解决该问题。实验结果表明,在2.7 kHz和接收器中使用激光调制的发射器,在1.5 kHz切断的高通滤波器上最适合50%的占空比。开发的发射器 - 接收器系统能够达到高达200米的距离,并且在各种环境光线条件下工作得很好。该结果表明,开发的原型可用于进一步开发所提出的基于激光的定位系统。

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